The Reintroduction Analysis of European Bison (Bison bonasus L., 1758) in the North of Romania and the Identification of the Most Favourable Locations
Abstract
:Simple Summary
Abstract
1. Introduction
- -
- The continuous breeding of captive and semi-free individuals, as the populations of European bison in zoos and reservations constitute a valuable genetic reserve for this species;
- -
- The continuation of reintroductions in the wild. These must be based on appropriate scientific data, requiring the identification of new reintroduction sites located mainly in the historical area of the species;
- -
- Ensuring the natural transfer of the gene pool between free herds in the Carpathians.
2. Materials and Methods
2.1. Favourable Habitats
2.2. The Dynamics of the Future Herds Released in the Wild
3. Results
3.1. Determining the Favourable Habitats and Hunting Grounds (HG)
- -
- Suceava county:
- (a)
- 21 Rarău, 22 Botoșana, 23 Negrileasa, 24 Frasin, 47 Voroneț, 69 Râșca, 70 Suha Mare, 71 Suha Mica;
- (b)
- 25 Dragoșa, 27 Moldovița, 28 Demacușa, 29 Brodina, 30 Nisipitu, 31 Straja, 32 Putna, 33 Codru Voivodeasa, 40 Sucevița, 41 Solca, 45 Humor Monastery;
- (c)
- 5 Chiril, 9 Negrișoara, 11Teșna, 12 Coșna, 17 Botuș, 18 Măgura.
- -
- Neamț County:
- (a)
- 1 Tazlău, 3 Iapa, 4 Calu, 6 Doamna-Oantu, 8 Murgoci, 9 Ardeluța, 10 Maieruș, 11 Tarcău, 12 Floarea, 13 Damuc, 14 Bicajel;
- (b)
- 7 Bisericani, 17 Schit, 19 Grințies, 20 Galu, 21 Hangu, 23 Sabasa, 24 Pipirig, 25 Secu, 26 Nemțisor, 29 Magazia, 33 Cuejdi-Almas;
- -
- Maramureș county:
- (a)
- 21 Baia Sprie, 22 Izvoare, 23 Agriș, 24 Huta, 25 Săpânța, 26 Câmpulung Tisa, 31 Valea Neagră;
- (b)
- 14 Salistea, 15 Baicu Ieud, 16 Botiza, 19 Slatioara, 20 Budești, 51 Strâmbu, 52 Rioaia, 53 Țibleș MM, 54 Suciuri-Groși;
- (c)
- 2 Faina, 3 Novat, 4 Viseu, 5 Rica, 7 Repedea, 8 Ruscova, 9 Bistra, 18 Bârsana.
3.2. The Dynamics in Space and Time of the Future Herds Released in the Wild
4. Discussion
5. Conclusions
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- Forest vegetation (composition, consistency, age, regeneration, grass cover, etc.);
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- Additional areas not covered by forest vegetation (meadows, alpine barren zones, meadows, pastures, creditworthiness, property, etc.);
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- Water sources and their availability throughout the year (relatively constant flow, frost, pollution, multiple use, etc.);
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- Potential man-made or natural barriers (fences, precipices, deep rivers, roads, settlements, new infrastructure projects) and their permeability (traffic, fords, etc.);
- -
- Existing infrastructure on the HGs (food lands, feeders, salt marshes, fodder depots/bailments, feeding places, hunting lodges, etc.);
- -
- Social acceptance.
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- IUCN; SSC. Guidelines for Reintroductions and Other Conservation Translocations; Gland Switz Camb UK IUCNSSC Re-Introd Spec Gr.; IUCN: Gland, Switzerland, 2013; p. 57.
- Bunzel-Drüke, M.; Drüke, J.; Vierhaus, H. Quaternary Park’: Large Herbivores and the Natural Landscape before the Last Ice Age. Grazing Grazing Anim. Vakbl. Natuurbeheer 2002, 41, 10–13. [Google Scholar]
- Benecke, N. The Holocene Distribution of European Bison-the Archaeozoological Record. Munibe Antropol. 2005, 57, 421–428. [Google Scholar]
- Hofman-Kamińska, E.; Bocherens, H.; Drucker, D.G.; Fyfe, R.M.; Gumiński, W.; Makowiecki, D.; Pacher, M.; Piličiauskienė, G.; Samojlik, T.; Woodbridge, J. Adapt or Die—Response of Large Herbivores to Environmental Changes in Europe during the Holocene. Glob. Chang. Biol. 2019, 25, 2915–2930. [Google Scholar] [CrossRef] [PubMed]
- Pucek, Z. European Bison (Bison Bonasus): Current State of the Species and Strategy for Its Conservation; Council of Europe: Strasbourg, France, 2004; ISBN 9287155496. [Google Scholar]
- Raczyński, J. European Bison Pedigree Book; United Nations: Białowieża, Poland, 2020. [Google Scholar]
- Vâlsan, G. Geographical Toponymy Distribution in Romania of Three Animals Now Extinct—Ox, Bison, Sheep. Bul. Soc. Regale Române Geogr. 1938, LVII, 20–34. [Google Scholar]
- Filipașcu, A. Savages from the Time of Our Ancestors; Stiintifica Publishing House: Bucuresti, Romania, 1969. [Google Scholar]
- Geptner, V.G.; Nasimovich, A.A.; Bannikov, A.G.; Hoffmann, R.S. Mammals of the Soviet Union. v. 1. Artiodactyla and Perissodactyla. 1988. Smithsonian Institution Libraries and National Science Foundation. Available online: https://library.si.edu/digital-library/book/mammalsofsovietu11988gept (accessed on 16 December 2020).
- Kuemmerle, T.; Hickler, T.; Olofsson, J.; Schurgers, G.; Radeloff, V.C. Reconstructing Range Dynamics and Range Fragmentation of European Bison for the Last 8000 Years. Divers. Distrib. 2012, 18, 47–59. [Google Scholar] [CrossRef]
- Cătănoiu, S.; (Vânători Neamț Natural Park, Vânători-Neamț, Romania). Personal communication, 2022.
- Dănilă, G.; Cheroiu, G.; Goicea, N. Cynegetics Notions; Mare, U.Ș.c.M., Ed.; Publisher Stefan cel Mare Publisher House: Suceava, Romania, 2022; ISBN 978-973-666-724-4. [Google Scholar]
- Mendoza, M.; Palmqvist, P. Hypsodonty in Ungulates: An Adaptation for Grass Consumption or for Foraging in Open Habitat? J. Zool. 2008, 274, 134–142. [Google Scholar] [CrossRef]
- Grzegrzółka, B.; Olech, W.; Krasiński, Z.A. The Genetic Structure of Lowland European Bison Free Ranging Herds in Poland. Park. Nar. Rezerw. Przyr. 2004, 23, 665–677. [Google Scholar]
- Baraniewicz, M.; Perzanowski, K. Are Reintroduced Wisents a Threat to Mountain Forests? Ann. Zool. Fenn. 2015, 52, 301–312. [Google Scholar] [CrossRef]
- Kuemmerle, T.; Perzanowski, K.; Akcakaya, H.R.; Beaudry, F.; Van Deelen, T.R.; Parnikoza, I.; Khoyetskyy, P.; Waller, D.M.; Radeloff, V.C. Cost-effectiveness of Strategies to Establish a European Bison Metapopulation in the Carpathians. J. Appl. Ecol. 2011, 48, 317–329. [Google Scholar] [CrossRef]
- Gębczyńska, Z.; Kowalczyk, J.; Krasińska, M.; Ziołecka, A.; Bisoniana, L.V. A Comparison of the Digestibility of Nutrients by European Bison and Cattle. Acta Theriol. 1974, 19, 283–289. [Google Scholar] [CrossRef] [Green Version]
- Bohn, U.; Neuhäusl, R.; Gollub, G.; Hettwer, C.; Neuhäuslová, Z.; Raus, T.H. Karte Der Naturlichen Vegetation Europas/Map of the Natural Vegetation of Europe. Maßstab/Scale 2003, 1, 500. [Google Scholar]
- Augustyn, M.; Kozak, I. The Trends of Anthropogenic Pressure in Polish and Ukrainian Carpathians. In Selected Ecological Problems of Polish–Ukrainian Carpathians Proceedings of the Scientific Session within the 2nd Annual Meeting of the International Centre of Ecology, Polish Academy of Sciences; Polish Academy of Sciences: Warsaw, Poland, 1997; pp. 15–22. [Google Scholar]
- Kuemmerle, T.; Perzanowski, K.; Chaskovskyy, O.; Ostapowicz, K.; Halada, L.; Bashta, A.-T.; Kruhlov, I.; Hostert, P.; Waller, D.M.; Radeloff, V.C. European Bison Habitat in the Carpathian Mountains. Biol. Conserv. 2010, 143, 908–916. [Google Scholar] [CrossRef]
- Bocherens, H.; Hofman-Kamińska, E.; Drucker, D.G.; Schmölcke, U.; Kowalczyk, R. European Bison as a Refugee Species? Evidence from Isotopic Data on Early Holocene Bison and Other Large Herbivores in Northern Europe. PLoS ONE 2015, 10, e0115090. [Google Scholar] [CrossRef] [PubMed]
- Kuemmerle, T.; Levers, C.; Bleyhl, B.; Olech, W.; Perzanowski, K.; Reusch, C.; Kramer-Schadt, S. One Size Does Not Fit All: European Bison Habitat Selection across Herds and Spatial Scales. Landsc. Ecol. 2018, 33, 1559–1572. [Google Scholar] [CrossRef]
- Olech, W.; Perzanowski, K. A Genetic Background for Reintroduction Program of the European Bison (Bison Bonasus) in the Carpathians. Biol. Conserv. 2002, 108, 221–228. [Google Scholar] [CrossRef]
- Kazmin, V.D.; Smirnov, K.A. Zimnee Pitanie, Kormovye Resursy i Troficheskoe Vozdeistvie Zubra Na Lesnye Fitocenozy Tsentral’nogo Kavkaza. Byulleten’Moskovskogo Obs. Ispyt. Prir. Otd. Biol. 1992, 97, 26–35. [Google Scholar]
- Ziółkowska, E.; Perzanowski, K.; Bleyhl, B.; Ostapowicz, K.; Kuemmerle, T. Understanding Unexpected Reintroduction Outcomes: Why Aren’t European Bison Colonizing Suitable Habitat in the Carpathians? Biol. Conserv. 2016, 195, 106–117. [Google Scholar] [CrossRef]
- Ziółkowska, E.; Perzanowski, K.; Bleyhl, B.; Ostapowicz, K.; Kuemmerle, T. What Hampers European Bison’s Movements? A Case Study from the Carpathians. In Proceedings of the IALE 2017, Ghent, Belgium, 12–15 September 2017. [Google Scholar]
- Zielke, L.; Wrage-Mönnig, N.; Müller, J.; Neumann, C. Implications of Spatial Habitat Diversity on Diet Selection of European Bison and Przewalski’s Horses in a Rewilding Area. Diversity 2019, 11, 63. [Google Scholar] [CrossRef] [Green Version]
- Perzanowski, K.; Olech, W. A Future for European Bison Bison Bonasus in the Carpathian Ecoregion? Wildlife Biol. 2007, 13, 108–112. [Google Scholar] [CrossRef] [Green Version]
- Balciauskas, L. Restoration of European Bison in Lithuania: Achievements and Problems. In Proceedings of the International Symposium:» European Bison, Yesterday, Today and Tomorrow, Šiauliai, Lithuania, 9–10 December 2000; pp. 8–15. [Google Scholar]
- României, P. Legea Vânătorii Şi a Protecției Fondului Cinegetic Nr. 407/2006. Monit. Of. Partea I 2006, 28, 944. [Google Scholar]
- Kuemmerle, T.; Radeloff, V.C.; Perzanowski, K.; Kozlo, P.; Sipko, T.; Khoyetskyy, P.; Bashta, A.-T.; Chikurova, E.; Parnikoza, I.; Baskin, L. Predicting Potential European Bison Habitat across Its Former Range. Ecol. Appl. 2011, 21, 830–843. [Google Scholar] [CrossRef] [PubMed]
- Hooge, P.N.; Eichenlaub, B. Animal Movement Extension to ArcView (Version 1.1); Alaska Biological Science Center, U.S. Geological Survey: Anchorage, Alaska, 1997.
- Manel, S.; Berthoud, F.; Bellemain, E.; Gaudeul, M.; Luikart, G.; Swenson, J.E.; Waits, L.P.; Taberlet, P.; Consortium, I. A New Individual-based Spatial Approach for Identifying Genetic Discontinuities in Natural Populations. Mol. Ecol. 2007, 16, 2031–2043. [Google Scholar] [CrossRef] [PubMed]
- Chabot, D.; Bird, D.M. Wildlife Research and Management Methods in the 21st Century: Where do Unmanned Aircraft Fit in? J. Unmanned Veh. Syst. 2015, 3, 137–155. [Google Scholar] [CrossRef] [Green Version]
- Duffy, J.P.; Cunliffe, A.M.; DeBell, L.; Sandbrook, C.; Wich, S.A.; Shutler, J.D.; Myers-Smith, I.H.; Varela, M.R.; Anderson, K. Location, Location, Location: Considerations When Using Lightweight Drones in Challenging Environments. Remote Sens. Ecol. Conserv. 2018, 4, 7–19. [Google Scholar] [CrossRef]
- Alexandru, C.; Rosca, S., IV. Hotspot analysis and human perception of Ursus Actos in the Romanian Carpathians. Geogr. Napocensis 2021, 15, 14–23. [Google Scholar]
- EEA. Corine Land Cover (CLC). [WWW Document]. 2012. Available online: http://land.copernicus.eu/pan-european/corine-land-cover/clc-2012/view (accessed on 16 December 2020).
- Deodatus, F. Creation of Ecological Corridors in Ukraine: A Manual on Stakeholder Involvement and Landscape-Ecological Modelling to Connect Protected Areas, Based on a Pilot in the Carpathians; State Agency for Protected Areas of the Ministry of Environmental Protection of Ukraine: Kyiv, Ukraine, 2010; ISBN 9079341053.
- Boyce, M.S. Population Viability Analysis. Annu. Rev. Ecol. Syst. 1992, 23, 481–497. [Google Scholar] [CrossRef]
- Beier, P.; Majka, D.; Jenness, J. Conceptual Steps for Designing Wildlife Corridors; CorridorDesign: Flagstaff, AZ, USA, 2007. [Google Scholar]
- Allendorf, F.; Ryman, N. The Role of Genetics in Population Viability Analysis; University of Chicago Press: Chicago, IL, USA, 2002. [Google Scholar]
- Miller, P.S.; Lacy, R.C. Vortex: A Stochastic Simulation of the Extinction Process: Version 9.50 User’s Manual; Conservation Breeding Specialist Group: Apple Valley, MN, USA, 2005. [Google Scholar]
- Krasińska, M.; Krasiński, Z.A.; Olech, W.; Perzanowski, K. European Bison. In The Nature Monograph; Mammal Research Institute PAS: Białowieża, Poland, 2007; p. 318. [Google Scholar]
- Brook, B.W.; Tonkyn, D.W.; O’Grady, J.J.; Frankham, R. Contribution of Inbreeding to Extinction Risk in Threatened Species. Conserv. Ecol. 2002, 6, 16. [Google Scholar] [CrossRef] [Green Version]
- Pčola, Š.; Gurecka, J. The Most Recent Information about the Restitution of European Bison (Bison Bonasus) to Poloniny National Park. Eur. Bison Conserv. Newsl. 2008, 1, 146–152. [Google Scholar]
- Plumb, G.E.; White, P.J.; Coughenour, M.B.; Wallen, R.L. Carrying Capacity, Migration, and Dispersal in Yellowstone Bison. Biol. Conserv. 2009, 142, 2377–2387. [Google Scholar] [CrossRef]
- Sebastian, C. Ecological Implications Regarding the European Bison (Bison bonasus L., 1758) Reintroduction in the Vânători Neamț Nature Park. Ph.D. Thesis, Transsylvania University, Brasov, Romania, 2012. [Google Scholar]
- Ostermann, S.D.; Deforge, J.R.; Edge, W.D. Captive Breeding and Reintroduction Evaluation Criteria: A Case Study of Peninsular Bighorn Sheep. Conserv. Biol. 2001, 15, 749–760. [Google Scholar] [CrossRef] [Green Version]
- Griffith, B.; Scott, J.M.; Carpenter, J.W.; Reed, C. Translocation as a Species Conservation Tool: Status and Strategy. Science 1989, 245, 477–480. [Google Scholar] [CrossRef] [PubMed]
- McLean, I.G.; Lundie-Jenkins, G.; Jarman, P.J. Teaching an Endangered Mammal to Recognise Predators. Biol. Conserv. 1996, 75, 51–62. [Google Scholar] [CrossRef] [Green Version]
- Lyles, A.M.; May, R.M. Problems in Leaving the Ark. Nature 1987, 326, 245–246. [Google Scholar] [CrossRef]
No. of Points | Land Use Classes |
---|---|
0 points | 111—continuous urban areas, 112—Artificial areas, 121—Industrial, commercial and transport units, 122—Road and rail networks and associated lands, 124—Airports, 131—Mineral extraction sites, 132—Dump sites, 133—Construction sites, 141—Green urban areas, 142—Sport and leisure facilities, 331—Beaches, dunes, sands, 332—Bare rocks, 333—Sparsely vegetated areas, 512—Water bodies |
20 points | 211-non-irrigated agricultural land, 212—Permanently irrigated land, 213—Arable land, 221—Vineyards, 222—Fruit trees and berry plantations, 322—Moors and heathland, 411—Inland marshes, 511—Water courses, 512-Water bodies |
40 points | 312—coniferous forests |
70 points | 311—deciduous forests |
80 points | 231—pastures, 242—Complex cultivation patterns, 243—Land mainly occupied by agriculture, with significant areas of natural vegetation |
90 points | 321—natural meadows, 324—Transitional woodland shrub |
100 points | 313 mixed forests |
Category | The Name of the Category | Score (fv) Points |
---|---|---|
0 | non-habitat | 0 |
1 | limited habitat | 0–25 |
2 | moderate habitat | 25–50 |
3 | good habitat | 50–75 |
4 | excellent habitat | >75 |
Scenario/Simulation | Wisent 2 | hr4 (1) | hr4 (2) | hr4 (3) |
---|---|---|---|---|
Adult females—supplementation | 2 | 1 | 3 | 0 |
Adult males—supplementation | 2 | 3 | 1 | 0 |
Young females—supplementation | 0 | 0 | 0 | 2 |
Young males—supplementation | 0 | 0 | 0 | 2 |
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Dănilă, G.; Cătănoiu, S.; Simioniuc, V.; Roșca, S. The Reintroduction Analysis of European Bison (Bison bonasus L., 1758) in the North of Romania and the Identification of the Most Favourable Locations. Forests 2022, 13, 920. https://doi.org/10.3390/f13060920
Dănilă G, Cătănoiu S, Simioniuc V, Roșca S. The Reintroduction Analysis of European Bison (Bison bonasus L., 1758) in the North of Romania and the Identification of the Most Favourable Locations. Forests. 2022; 13(6):920. https://doi.org/10.3390/f13060920
Chicago/Turabian StyleDănilă, Gabriel, Sebastian Cătănoiu, Valerian Simioniuc, and Sanda Roșca. 2022. "The Reintroduction Analysis of European Bison (Bison bonasus L., 1758) in the North of Romania and the Identification of the Most Favourable Locations" Forests 13, no. 6: 920. https://doi.org/10.3390/f13060920
APA StyleDănilă, G., Cătănoiu, S., Simioniuc, V., & Roșca, S. (2022). The Reintroduction Analysis of European Bison (Bison bonasus L., 1758) in the North of Romania and the Identification of the Most Favourable Locations. Forests, 13(6), 920. https://doi.org/10.3390/f13060920